fox01 -miR-506轴通过fox01 /miR-506/ETS1/ fox01的反馈回路促进对替莫唑胺的化学敏感性,抑制胶质母细胞瘤的侵袭性。

Chao Chen, Yu'e Liu, Hongxiang Wang, Xu Zhang, Yufeng Shi, Juxiang Chen
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引用次数: 0

摘要

为了探讨forkhead box蛋白O1 (FOXO1)在多形性胶质母细胞瘤(GBM)发生及耐药过程中的作用,我们通过体外和体内实验,揭示了FOXO1和miR-506在U251细胞系增殖、凋亡、迁移、侵袭、自噬及替莫唑胺(TMZ)敏感性中的作用。采用细胞计数试剂盒-8 (CCK8)检测细胞活力;用抓痕法检测迁移和侵袭;用末端脱氧核苷酸转移酶dUTP镍端标记(TUNEL)染色和流式细胞术检测细胞凋亡情况。通过质粒构建和双荧光素酶报告基因实验寻找fox01与miR-506的相互作用位点。在体实验后用免疫组化法检测肿瘤组织蛋白水平。我们发现fox01 - mir -506轴抑制GBM细胞的侵袭和迁移,促进GBM对TMZ的化学敏感性,这是由自噬介导的。fox01通过结合其启动子上调miR-506,从而增强转录激活。MiR-506可以通过靶向E26的3'-非翻译区(UTR)下调ETS1的表达。有趣的是,在GBM细胞中,ETS1促进FOXO1从细胞核向细胞质转运,并进一步抑制FOXO1- mir -506轴。一致地,在小鼠模型中,miR-506抑制和ETS1过表达都可以挽救FOXO1过度激活介导的TMZ化学敏感性。我们的研究表明FOXO1/miR-506/ETS1/FOXO1在GBM中具有调节侵袭性和化学敏感性的负反馈回路。因此,上面的轴可能是GBM的一个有希望的治疗靶点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
FOXO1-miR-506 axis promotes chemosensitivity to temozolomide and suppresses invasiveness in glioblastoma through a feedback loop of FOXO1/miR-506/ETS1/FOXO1.

To explore the role of forkhead box protein O1 (FOXO1) in the progression of glioblastoma multiforme (GBM) and related drug resistance, we deciphered the roles of FOXO1 and miR-506 in proliferation, apoptosis, migration, invasion, autophagy, and temozolomide (TMZ) sensitivity in the U251 cell line using in vitro and in vivo experiments. Cell viability was tested by a cell counting kit-8 (CCK8) kit; migration and invasion were checked by the scratching assay; apoptosis was evaluated by terminal deoxynucleotidyl transferase dUTP nick-end labeling (TUNEL) staining and flow cytometry. The construction of plasmids and dual-luciferase reporter experiment were carried out to find the interaction site between FOXO1 and miR-506. Immunohistochemistry was done to check the protein level in tumors after the in vivo experiment. We found that the FOXO1-miR-506 axis suppresses GBM cell invasion and migration and promotes GBM chemosensitivity to TMZ, which was mediated by autophagy. FOXO1 upregulates miR-506 by binding to its promoter to enhance transcriptional activation. MiR-506 could downregulate E26 transformation-specific 1 (ETS1) expression by targeting its 3'-untranslated region (UTR). Interestingly, ETS1 promoted FOXO1 translocation from the nucleus to the cytosol and further suppressed the FOXO1-miR-506 axis in GBM cells. Consistently, both miR-506 inhibition and ETS1 overexpression could rescue FOXO1 overactivation-mediated TMZ chemosensitivity in mouse models. Our study demonstrated a negative feedback loop of FOXO1/miR-506/ETS1/FOXO1 in GBM in regulating invasiveness and chemosensitivity. Thus, the above axis might be a promising therapeutic target for GBM.

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